feat(server): monitor model + checker package
Server Deploy / deploy (push) Successful in 53s

This commit is contained in:
2026-07-21 14:10:46 +01:00
parent ca2c05db14
commit e019493087
2 changed files with 299 additions and 0 deletions
+222
View File
@@ -0,0 +1,222 @@
// Package checker runs service checks (http/tcp/icmp/tls) and returns a uniform
// Result. It has no dependency on models or pb so it can be duplicated verbatim
// into the agent module (agent-run monitors) — callers map their own monitor
// representation onto Spec.
package checker
import (
"context"
"crypto/tls"
"fmt"
"io"
"net"
"net/http"
"os"
"strings"
"time"
)
// Check types (mirror models.Monitor* constants).
const (
TypeHTTP = "http"
TypeTCP = "tcp"
TypeICMP = "icmp"
TypeTLS = "tls"
)
// Spec is a self-contained description of a single check.
type Spec struct {
Type string
URL string
Host string
Port int
Method string
ExpectedStatus int
Keyword string
TLSWarnDays int
TimeoutSec int
}
// Result is the uniform outcome of running a check.
type Result struct {
Up bool
LatencyMs int
Message string
CertExpiry *time.Time
}
func (s Spec) timeout() time.Duration {
t := s.TimeoutSec
if t <= 0 || t > 10 {
t = 10
}
return time.Duration(t) * time.Second
}
// Run executes the check described by s.
func Run(ctx context.Context, s Spec) Result {
switch s.Type {
case TypeHTTP:
return runHTTP(ctx, s)
case TypeTCP:
return runTCP(ctx, s)
case TypeICMP:
return runICMP(ctx, s)
case TypeTLS:
return runTLS(ctx, s)
default:
return Result{Message: "unknown check type: " + s.Type}
}
}
func runHTTP(ctx context.Context, s Spec) Result {
method := s.Method
if method == "" {
method = http.MethodGet
}
expect := s.ExpectedStatus
if expect == 0 {
expect = 200
}
client := &http.Client{Timeout: s.timeout()}
start := time.Now()
req, err := http.NewRequestWithContext(ctx, method, s.URL, nil)
if err != nil {
return Result{Message: err.Error()}
}
resp, err := client.Do(req)
if err != nil {
return Result{LatencyMs: msSince(start), Message: err.Error()}
}
defer resp.Body.Close()
res := Result{LatencyMs: msSince(start), Up: true}
if resp.TLS != nil && len(resp.TLS.PeerCertificates) > 0 {
exp := resp.TLS.PeerCertificates[0].NotAfter
res.CertExpiry = &exp
}
if resp.StatusCode != expect {
return Result{LatencyMs: res.LatencyMs, CertExpiry: res.CertExpiry, Message: fmt.Sprintf("status %d (want %d)", resp.StatusCode, expect)}
}
if s.Keyword != "" {
body, _ := io.ReadAll(io.LimitReader(resp.Body, 1<<20))
if !strings.Contains(string(body), s.Keyword) {
return Result{LatencyMs: res.LatencyMs, CertExpiry: res.CertExpiry, Message: "keyword not found"}
}
}
return res
}
func runTCP(ctx context.Context, s Spec) Result {
addr := net.JoinHostPort(s.Host, fmt.Sprint(s.Port))
start := time.Now()
d := net.Dialer{Timeout: s.timeout()}
conn, err := d.DialContext(ctx, "tcp", addr)
if err != nil {
return Result{LatencyMs: msSince(start), Message: err.Error()}
}
conn.Close()
return Result{Up: true, LatencyMs: msSince(start)}
}
func runTLS(ctx context.Context, s Spec) Result {
port := s.Port
if port == 0 {
port = 443
}
addr := net.JoinHostPort(s.Host, fmt.Sprint(port))
start := time.Now()
d := net.Dialer{Timeout: s.timeout()}
conn, err := tls.DialWithDialer(&d, "tcp", addr, &tls.Config{ServerName: s.Host})
if err != nil {
return Result{LatencyMs: msSince(start), Message: err.Error()}
}
defer conn.Close()
certs := conn.ConnectionState().PeerCertificates
if len(certs) == 0 {
return Result{LatencyMs: msSince(start), Message: "no peer certificate"}
}
exp := certs[0].NotAfter
res := Result{LatencyMs: msSince(start), CertExpiry: &exp}
warn := s.TLSWarnDays
if warn <= 0 {
warn = 14
}
remaining := time.Until(exp)
if remaining <= 0 {
res.Message = "certificate expired"
return res
}
if remaining <= time.Duration(warn)*24*time.Hour {
res.Message = fmt.Sprintf("certificate expires in %d days", int(remaining.Hours()/24))
return res
}
res.Up = true
return res
}
func msSince(t time.Time) int { return int(time.Since(t).Milliseconds()) }
// runICMP sends a single ICMP echo request and waits for the reply. Requires
// raw-socket privileges (the agent and server run as root). Returns down with a
// descriptive message when the socket cannot be opened or no reply arrives.
func runICMP(ctx context.Context, s Spec) Result {
dst, err := net.ResolveIPAddr("ip4", s.Host)
if err != nil {
return Result{Message: err.Error()}
}
conn, err := net.ListenPacket("ip4:icmp", "0.0.0.0")
if err != nil {
return Result{Message: "icmp socket: " + err.Error()}
}
defer conn.Close()
id := os.Getpid() & 0xffff
pkt := icmpEcho(id, 1)
deadline := time.Now().Add(s.timeout())
if d, ok := ctx.Deadline(); ok && d.Before(deadline) {
deadline = d
}
_ = conn.SetDeadline(deadline)
start := time.Now()
if _, err := conn.WriteTo(pkt, dst); err != nil {
return Result{Message: err.Error()}
}
reply := make([]byte, 1500)
for {
n, peer, err := conn.ReadFrom(reply)
if err != nil {
return Result{LatencyMs: msSince(start), Message: "no reply"}
}
// Skip the IPv4 header (20 bytes) to reach the ICMP message.
if n < 28 || peer.String() != dst.String() {
continue
}
if reply[20] == 0 { // ICMP echo reply type
return Result{Up: true, LatencyMs: msSince(start)}
}
}
}
func icmpEcho(id, seq int) []byte {
// Type(8)=echo request, Code=0, Checksum, ID, Seq, no payload.
b := []byte{8, 0, 0, 0, byte(id >> 8), byte(id), byte(seq >> 8), byte(seq)}
cs := icmpChecksum(b)
b[2] = byte(cs >> 8)
b[3] = byte(cs)
return b
}
func icmpChecksum(b []byte) uint16 {
var sum uint32
for i := 0; i < len(b)-1; i += 2 {
sum += uint32(b[i])<<8 | uint32(b[i+1])
}
if len(b)%2 == 1 {
sum += uint32(b[len(b)-1]) << 8
}
for sum>>16 != 0 {
sum = (sum & 0xffff) + (sum >> 16)
}
return ^uint16(sum)
}
+77
View File
@@ -0,0 +1,77 @@
package models
import (
"time"
"go.mongodb.org/mongo-driver/v2/bson"
)
// Monitor check types.
const (
MonitorHTTP = "http"
MonitorTCP = "tcp"
MonitorICMP = "icmp"
MonitorTLS = "tls"
)
// Monitor status values.
const (
StatusUp = "up"
StatusDown = "down"
StatusPending = "pending"
)
// RunnerServer is the reserved Runner value for server-run monitors. Any other
// value is treated as a server_id whose agent runs the check locally.
const RunnerServer = "server"
type MonitorTarget struct {
URL string `bson:"url,omitempty" json:"url,omitempty"`
Host string `bson:"host,omitempty" json:"host,omitempty"`
Port int `bson:"port,omitempty" json:"port,omitempty"`
Method string `bson:"method,omitempty" json:"method,omitempty"`
ExpectedStatus int `bson:"expected_status,omitempty" json:"expected_status,omitempty"`
Keyword string `bson:"keyword,omitempty" json:"keyword,omitempty"`
TLSWarnDays int `bson:"tls_warn_days,omitempty" json:"tls_warn_days,omitempty"`
}
type MonitorState struct {
Status string `bson:"status" json:"status"` // up|down|pending
LastCheckAt *time.Time `bson:"last_check_at,omitempty" json:"last_check_at,omitempty"`
LatencyMs int `bson:"latency_ms" json:"latency_ms"`
Message string `bson:"message,omitempty" json:"message,omitempty"`
CertExpiryAt *time.Time `bson:"cert_expiry_at,omitempty" json:"cert_expiry_at,omitempty"`
Fails int `bson:"fails" json:"fails"` // consecutive failures
LastNotifiedAt *time.Time `bson:"last_notified_at,omitempty" json:"last_notified_at,omitempty"`
}
type Monitor struct {
ID bson.ObjectID `bson:"_id,omitempty" json:"_id,omitempty"`
MonitorID string `bson:"monitor_id" json:"monitor_id"`
Name string `bson:"name" json:"name"`
Type string `bson:"type" json:"type"` // http|tcp|icmp|tls
Target MonitorTarget `bson:"target" json:"target"`
IntervalSec int `bson:"interval_sec" json:"interval_sec"`
Runner string `bson:"runner" json:"runner"` // "server" or a server_id
Retries int `bson:"retries" json:"retries"` // consecutive fails before down
Enabled bool `bson:"enabled" json:"enabled"`
ChannelIDs []string `bson:"channel_ids,omitempty" json:"channel_ids,omitempty"`
State MonitorState `bson:"state" json:"state"`
CreatedAt time.Time `bson:"created_at" json:"created_at"`
}
type Incident struct {
IncidentID string `bson:"incident_id" json:"incident_id"`
MonitorID string `bson:"monitor_id" json:"monitor_id"`
StartedAt time.Time `bson:"started_at" json:"started_at"`
ResolvedAt *time.Time `bson:"resolved_at,omitempty" json:"resolved_at,omitempty"`
Cause string `bson:"cause,omitempty" json:"cause,omitempty"`
}
type Rollup struct {
MonitorID string `bson:"monitor_id" json:"monitor_id"`
PeriodStart time.Time `bson:"period_start" json:"period_start"` // hour bucket
Checks int `bson:"checks" json:"checks"`
UpCount int `bson:"up_count" json:"up_count"`
SumLatency int64 `bson:"sum_latency" json:"sum_latency"`
}